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An Attribute-Based Access Control Model in RFID Systems Based on Blockchain Decentralized Applications for Healthcare Environments

机译:基于SlockChain的RFID系统基于属性的访问控制模型,用于医疗保健环境的分散应用

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The growing adoption of Radio-frequency Identification (RFID) systems, particularly in the healthcare field, demonstrates that RFID is a positive asset for healthcare institutions. RFID offers the ability to save organizations time and costs by enabling data of traceability, identification, communication, temperature and location in real time for both people and resources. However, the RFID systems challenges are financial, technical, organizational and above all privacy and security. For this reason, recent works focus on attribute-based access control (ABAC) schemes. Currently, ABAC are based on mostly centralized models, which in environments such as the supply chain can present problems of scalability, synchronization and trust between the parties. In this manuscript, we implement an ABAC model in RFID systems based on a decentralized model such as blockchain. Common criteria for the selection of the appropriate blockchain are detailed. Our access control policies are executed through the decentralized application (DApp), which interfaces with the blockchain through the smart contract. Smart contracts and blockchain technology, on the one hand, solve current centralized systems issues as well as being flexible infrastructures that represent the relationship of trust and support essential in the ABAC model in order to provide the security of RFID systems. Our system has been designed for a supply chain environment with an use case suitable for healthcare systems, so that assets such as surgical instruments containing an associated RFID tag can only access to specific areas. Our system is deployed in both a local and Testnet environment in order to stablish a deep comparison and determining the technical feasibility.
机译:越来越多地采用射频识别(RFID)系统,特别是在医疗保健领域,表明RFID是医疗机构的正资产。 RFID通过能够在人和资源实时实现可追溯性,识别,通信,温度和位置的数据来节省组织时间和成本。但是,RFID系统的挑战是金融,技术,组织,高于所有隐私和安全性。出于这个原因,最近的作品侧重于基于属性的访问控制(ABAC)方案。目前,ABAC基于大多数集中式模型,在诸如供应链中的环境中,可以在各方之间存在可伸缩性,同步和信任的问题。在此稿件中,我们基于诸如区块链的分散模型实现RFID系统中的ABAC模型。详细介绍了选择适当的区块链的常见标准。我们的访问控制策略是通过分散的应用程序(DAPP)执行的,该应用程序通过智能合同与区块链接口。一方面,智能合同和区块链技术解决了当前的集中系统问题以及表示信任关系和支持ABAC模型的必要关系的灵活基础设施,以便提供RFID系统的安全性。我们的系统专为供应链环境而设计,适合用于医疗保健系统的用例,因此诸如包含相关RFID标签的外科仪器的资产只能访问特定区域。我们的系统部署在本地和TestNet环境中,以便稳定深度比较和确定技术可行性。

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